Evaluation Equipment - メーカー・企業17社の製品一覧とランキング

更新日: 集計期間:Aug 13, 2025~Sep 09, 2025
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Evaluation Equipmentのメーカー・企業ランキング

更新日: 集計期間:Aug 13, 2025~Sep 09, 2025
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  1. マイクロトラック・ベル Osaka//others
  2. 八洋コンサルタント Tokyo//Construction Consultant
  3. 東栄産業 Tokyo//others
  4. 4 ヘッドアコースティクスジャパン Kanagawa//others
  5. 5 日本カンタム・デザイン Tokyo//Government

Evaluation Equipmentの製品ランキング

更新日: 集計期間:Aug 13, 2025~Sep 09, 2025
※当サイトの各ページの閲覧回数を元に算出したランキングです。

  1. J Ring Flow Test 八洋コンサルタント
  2. Nanoparticle Physical Property Evaluation Device "NANOTRAC WAVE II Series" マイクロトラック・ベル
  3. Composite Material Interface Characteristic Evaluation Device 'MODEL HM410' 東栄産業
  4. 4 No. 36 Steam Treatment Method in NH3-TPD マイクロトラック・ベル
  5. 4 Catalyst Evaluation Series "BELCAT II/BELMASS II" マイクロトラック・ベル

Evaluation Equipmentの製品一覧

16~30 件を表示 / 全 45 件

表示件数

Development support and improvement support [Presentation of case studies]

If you have any issues or concerns related to the environment, please feel free to consult with us.

We support the analysis and purification of environmental pollutants and contaminants through: - Development of new technologies and products - Improvement of existing technologies and products - Troubleshooting We are available to assist with various inquiries such as "data collection," "evaluation of existing data," "identification of trouble causes," and "improvement proposals."

  • Environmental Survey

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[Data] Evaluation of 3D Shape and Particle Size of Resin Pellets

In the evaluation of individual particle diameters, it has become possible to assess the Z-axis "thickness" in addition to the XY axes, achieving effective classification and high data consistency!

The size evaluation of resin pellets is typically conducted using a caliper for three-dimensional (3D) assessment along the X, Y, and Z axes, or through sieve methods; however, both methods present challenges in terms of measurement effort. As a solution, two-dimensional (2D) evaluations using common image analysis methods and laser diffraction/scattering methods have been proposed, but the data does not align with caliper measurements or sieve methods, making them insufficient as alternatives. Here, we introduce the "Particle Shape Evaluation and Particle Size Distribution Measurement Device PartAn3D," which employs patented 3D imaging technology. This device achieves a high correlation with conventional methods by evaluating not only the XY axis (plane) but also the Z axis (thickness). [Contents] ■ Measurement Principle ■ Evaluation of Thickness Distribution through 3D Measurement (Sample: Resin Pellets) ■ Discussion ■ Evaluation Device *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Structural evaluation of carbon black using various measurement methods.

It is possible to conduct a more detailed evaluation of the size of each constituent particle and the size of the gaps between the particles.

In this document, we will evaluate the physical properties of carbon black. Carbon black, primarily used as a filler in rubber and plastics, as well as in pigments and electrode materials, is known to have a structure consisting of the smallest unit aggregates made up of domains, and agglomerates formed by the aggregation of these aggregates. The physical properties of carbon black are mainly determined by particle size, particle surface characteristics, and structure. 【Features】 ■ Overview ■ Evaluation Equipment and Evaluation Items ■ Measurement Samples ■ Discussion ■ Summary ■ Measurement Results *For more details, please refer to the PDF document or feel free to contact us.

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Nanoparticle Physical Property Evaluation Device "NANOTRAC WAVE II Series"

Demo/Analysis Now Available! Dynamic Light Scattering! Advanced technologies such as the heterodyne method and frequency analysis method have been adopted as measurement principles.

In the expanding world of nanotechnology, the "NANOTRAC WAVE II" has been developed as an evolution of the well-regarded UPA series that has been trusted by our customers. It employs advanced technologies such as the heterodyne method and frequency analysis as its measurement principles. Achieving a wide range of concentration measurements with high precision and high resolution, we deliver the hidden potential of nanotechnology to our customers through the technical expertise and quality cultivated over many years of experience. 【Features】 ■ Measurement principle (Dynamic Light Scattering: DLS) ■ Stable data from low to high concentrations ■ Adoption of the heterodyne method ■ Background measurement ■ Use of a unique frequency analysis algorithm *For more details, please refer to the PDF document or feel free to contact us.

  • Other analytical equipment

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【Technical Information】What is adsorption?

Adsorption technology has been researched for a long time and is also applied in industrial processes such as gas separation!

Today, adsorption technology is also applied in industrial processes such as gas separation. Adsorption has forms as shown in the diagram, and what is unclear is the difference between chemical adsorption and physical adsorption. Generally, when a gas molecule is adsorbed onto a material and has a strong bond (such as hydrogen bonds or acid-base interactions) that cannot be desorbed at the adsorption temperature or room temperature, it is called chemical adsorption. In contrast, physical adsorption is primarily due to van der Waals forces, and desorption is possible by vacuum evacuation. Currently, it is also recommended to stop using the terms physical adsorption and chemical adsorption and instead refer to them as reversible adsorption and irreversible adsorption. *For more details, please refer to the related links or feel free to contact us.*

  • Other services and technologies

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What are the suitable theories and adsorbates for evaluating the pore structures of porous carbon and silica?

[Web Seminar] Introduction to the Theory of Suitable Pore Distribution Evaluation and What Adsorbates Are.

In the Microtrac MRB Webinar Series 1 and 3, we introduced the points to consider in adsorption isotherm measurements, the BET specific surface area evaluation method, and classical pore structure evaluation (such as the t-method, capillary condensation theory, and adsorption potential theory). This time, using porous carbon, silica, and zeolites, which are used in various battery electrodes, gas separation, catalysts, and catalyst support materials, we will present an overview of the new pore distribution evaluation theory (NLDFT/GCMC) and from these evaluation cases, we will introduce what constitutes an appropriate pore distribution evaluation theory and adsorbate. Additionally, we will introduce the breakthrough curve measurement, which has been added as a new feature to the catalyst evaluation device "BELCAT II," along with measurement examples for single-component and two-component cases. *For more details, please refer to the PDF materials or feel free to contact us.

  • Other analytical equipment

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[Data] Evaluation of pore structure of porous materials using NLDFT method and GCMC method.

Evaluation of pore structure of porous materials with cylindrical pores using NLDFT and GCMC methods - Selection of suitable adsorbates and analysis methods?

So far, various methods for evaluating the pore structure of porous materials have been used based on the differences in pore structures. In the micro-pore region, methods such as the HK method, SF method, and CY method based on adsorption potential theory have been employed, while in the meso-macro pore region, classical pore distribution analysis methods such as the INNES method and BJH method based on capillary condensation theory have been used. On the other hand, in recent years, there has been growing attention on new pore distribution analysis methods such as NLDFT and GCMC, which allow for analysis based on a unified theory from micro-pores to meso-macro pores through computer simulations. This document examines which theory, NLDFT or GCMC, is more suitable for pore distribution analysis. Additionally, while the adsorbate proposed by IUPAC 2015 is Ar adsorption, it also investigates the usefulness of N2 adsorption. Specifically, it analyzes the N2 and Ar actual adsorption isotherms of mesoporous silica MCM41, MFI, and MTW zeolites. *For more details, please refer to the PDF document or feel free to contact us.*

  • Other measuring instruments

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Proposal for Microtrac MRB products for Carbon Neutrality

MicrotracMRB contributes to the realization of a decarbonized society and carbon neutrality through its nanoscale powder and particle evaluation technology.

1. For the evaluation of materials for CO2 separation and recovery: • High-precision gas/vapor adsorption measurement device BELSORP MAX X • High-precision gas/vapor adsorption measurement device BELSORP MAX II • Catalyst evaluation device and gas analyzer BELCAT II + BELMASS II 2. For the evaluation of materials for clean energy "batteries" that do not emit CO2: • Particle size distribution and shape measurement device SYNC • Particle size distribution (granulometric distribution) and zeta potential measurement device NANOTRAC WAVE • Specific surface area and pore distribution measurement device BELSORP MINI X • True density measurement device BELPYCNO • Static image analysis particle size distribution and shape measurement device CAMSIZER M1 3. For the evaluation of materials for cement and concrete aimed at effective utilization of CO2: • High-precision gas/vapor adsorption measurement device BELSORP MAX X • True density measurement device BELPYCNO • Mercury porosimeter BELPORE • Particle size distribution and shape measurement device SYNC *For more details, please contact us. We also accept requests for demonstrations and sample analysis. Feel free to reach out to us.

  • Other analytical equipment

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Catalyst Evaluation Series "BELCAT II/BELMASS II"

[Presentation of materials with YouTube video link] Various catalyst evaluations possible with one unit! Abundant options!

We would like to introduce the catalytic analysis device "BELCAT II" along with the online gas analyzer "BELMASS II." In addition to the evaluation of heterogeneous catalysts (solid acid/base catalysts and metal-supported catalysts), it is also possible to evaluate adsorbents through breakthrough curve measurements. 【Evaluation List】 ■ Temperature Programmed Desorption/Sorption (TPD/TPO/TPR) measurements ■ Chemical adsorption measurements using the pulse method (metal dispersion, particle size, surface area) ■ Fixed bed atmospheric pressure flow catalytic reactions ■ Breakthrough curve measurements for single and multi-component adsorption * You can download materials with a link to a YouTube video. * For more details, please refer to the PDF materials or feel free to contact us.

  • Other analytical equipment
  • Measurement and Analysis Equipment

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Particle Property Evaluation Device LS Spectrometer

Reduce the effects of multiple scattering! A particle characterization device that allows measurement in the sample's original state.

The "LS Spectrometer" from Japan Quantum Design is a sophisticated particle characterization device based on SLS and DLS. To eliminate the contribution of multiple scattering to the data, it employs innovative 3D cross-correlation technology, and there is no need to dilute the sample. It allows for the measurement of particle size, shape and structure factors, molecular weight, and rotational and translational diffusion coefficients while maintaining the sample in its original state. 【Features】 ■ Particle characterization device based on SLS and DLS ■ No need to dilute the sample ■ Measurements can be made in the sample's original state ■ Effective in reducing the effects of multiple scattering *For more details, please refer to the PDF document or feel free to contact us.

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Solar Power Generation Test Selection Comprehensive Catalog

For maintenance, monitoring, and performance evaluation devices for solar cells, choose Shin-Ei Electronic Measuring Instruments!!

This is an introduction to the "Solar Power Generation Test Selection" catalog from Shin-Ei Electronic Measuring Instruments Co., Ltd., which creates measurement technology and human interfaces.

  • Other measuring instruments

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Composite Material Interface Characteristic Evaluation Device 'MODEL HM410'

Measurement of interfacial shear strength and contact angle! Evaluation device for composite interfacial properties using the micro droplet method.

The "MODEL HM410" is a composite interface property evaluation device that can measure the shear strength at the fiber-resin interface and contact angle using the microdroplet method. Under any temperature environment, it adheres liquid resin to ultra-fine single transitions, captures the shape, and calculates the contact angle from the images. At the same time, a pull-out test is conducted using the same sample, and the shear strength at the interface between the transition and the resin is measured from the pull-out load at that time. 【Features】 ■ Evaluation device using the microdroplet method ■ Measurement of contact angle from images ■ Measurement of shear strength at the interface between transition and resin from pull-out load *For more details, please refer to the PDF document or feel free to contact us.

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Evaluation of TFT characteristics of liquid crystal panels

We can perform good product characteristic measurements for performance verification, as well as defective characteristic measurements and reliability evaluations!

Our company is capable of conducting performance verification through good characteristic measurements, defective characteristic measurements, and reliability evaluations for specific TFTs in LCD panels. In the "Electrical Characteristic Measurement of TFTs at Various Temperatures," we can disassemble the monitor in display mode and perform electrical characteristic measurements on the pixel TFTs within the panel. In the "DC Bias Stress Test," we apply an arbitrary DC bias to the Gate and Drain and measure the Vth shift when stress is applied to the TFT, thereby confirming reliability. 【Features】 <Electrical Characteristic Measurement of TFTs at Various Temperatures> ■ Electrical characteristic measurements can be performed on the pixel TFTs within the panel. ■ Measurements can be conducted before and after annealing, under light exposure, heating, or cooling conditions. ■ From the measurement results, indicators such as Ion, Ioff, Vth, and mobility can be calculated. ■ Confirmation of actual values in good product analysis and clarification of defect causes can be performed. *For more details, please refer to the PDF document or feel free to contact us.

  • Measurement and Inspection

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EHC's new technology! Successfully expanded the gap range of evaluation cells!

A must-see for researchers! The gap range of the evaluation cell has been expanded to 0.7 to 100 μm! 【Over 10,000 types】

It is ideal for research tools for liquid crystal materials and other advanced materials. Thanks to our technological advancements, we have successfully expanded the gap range of evaluation cells! Until now, we could only measure within the range of 2 to 50 μm, but we can now measure 0.7 to 2 μm and 50 to 100 μm, which were considered difficult in the industry. Additionally, specifications of ±0.2 μm are now possible, allowing us to meet detailed needs. Our product classification encompasses over 10,000 types, and we can customize according to your needs. 【Contents】 - Explanation of display examples and display symbols - Orientation diagrams by type - Price list - Glass substrates ● For more details, please contact us or download the catalog.

  • Wiring devices

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OLED Constant Temperature and Humidity Environment Evaluation Device ELS-100A

This is an evaluation device that allows organic EL display devices to emit light under constant temperature and humidity conditions, conducting accelerated tests on brightness and emitted screen images, with the capability of CSV output.

The ELS-100A is a device that efficiently conducts environmental testing and evaluation of organic EL devices. It installs the OLED device's light-emitting unit inside a constant temperature and humidity chamber and performs automatic measurements through a high-transmittance glass on the top surface of the environmental control unit. The standard specification features 4 channels and accommodates both bottom-emission and top-emission fixtures for the OLED device. With a proven constant current control system and a reliable luminance meter, it conducts accelerated tests for temperature and humidity, records the light-emitting state, and outputs the data in CSV file format.

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